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Third-order dissipative hydrodynamics from the entropy principle

机译:熵原理的三阶耗散流体力学

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We review the entropy based derivation of third-order hydrodynamic equations and compare their solutions in one-dimensional boost-invariant geometry with calculations by the partonic cascade BAMPS. We demonstrate that Grad's approximation, which underlies the derivation of both Israel-Stewart and third-order equations, describes the transverse spectra from BAMPS with high accuracy. At the same time solutions of third-order equations are much closer to BAMPS results than solutions of Israel-Stewart equations. Introducing a resummation scheme for all higher-oder corrections to one-dimensional hydrodynamic equation we demonstrate the importance of higher-order terms if the Knudsen number is large.
机译:我们回顾了基于熵的三阶流体动力学方程的推导,并将它们在一维增压不变几何中的解与通过部分声级联BAMPS的计算进行了比较。我们证明,作为以色列-斯图尔特方程和三阶方程式推导基础的Grad逼近可高精度描述BAMPS的横向光谱。同时,与Israel-Stewart方程的解相比,三阶方程的解更接近BAMPS结果。为一维水动力方程式引入所有高阶校正的恢复方案,我们证明了如果努德森数较大,则高阶项的重要性。

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